†MOA Key Laboratory of Plant Pathology, Department of Plant Pathology, College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China.
§Institute of Agro-products Processing Science and Technology, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
J Agric Food Chem. 2015 Apr 8;63(13):3501-8. doi: 10.1021/acs.jafc.5b00694. Epub 2015 Mar 25.
Ustilaginoidins were bis-naphtho-γ-pyrones mycotoxins possessing an aR configuration of the chiral axis previously reported from the false smut balls of rice infected by the fungal pathogen Ustilaginoidea virens. To investigate the chemical diversity of these metabolites and their bioactivities, we fermented this fungus on solid rice media, which afforded the isolation of 13 ustilaginoidins, including seven new compounds, namely ustilaginoidins K-P, 1-6, and E1, 7, together with the known ustilaginoidins A, 8, D, 9, E, 10, F, 11, and G, 12, and isochaetochromin B2, 13. The structures of the new compounds were elucidated by using (1D, 2D) NMR, high-resolution mass spectrometry, UV, and circular dichroism, as well as by comparison with the literature data. A plausible biosynthesis pathway was proposed for these dimeric polyketides. The isolated compounds were evaluated for their antibacterial, cytotoxic, and radicle elongation inhibitory activities. Ustilaginoidins K, 1 and L, 2 showed cytotoxic activities on the A2780 human ovarian cancer cell line with IC50 values of 4.18 and 7.26 μM, respectively. Ustilaginoidins N, 4, D, 9, E, 10, and G, 12 were active against the tested pathogenic bacteria with MIC values in the range of 16-64 μg/mL. Ustilaginoidins O, 5, E, 10, and F, 11, and isochaetochromin B2, 13 displayed moderate inhibitory activity on the radicle elongation of rice seeds.
类黑粉菌素是双萘并-γ-吡喃霉菌毒素,具有先前报道的来自受真菌病原体稻绿核菌感染的假黑穗病粒的手性轴的 aR 构型。为了研究这些代谢物的化学多样性及其生物活性,我们在固体大米培养基上发酵这种真菌,从而获得了 13 种类黑粉菌素的分离,包括 7 种新化合物,即类黑粉菌素 K-P、1-6 和 E1、7,以及已知的类黑粉菌素 A、8、D、9、E、10、F、11 和 G、12 和异麦角醇 B2、13。新化合物的结构通过(1D、2D)NMR、高分辨率质谱、UV 和圆二色性以及与文献数据的比较来阐明。提出了这些二聚体聚酮的可能生物合成途径。对分离得到的化合物进行了抗菌、细胞毒性和根伸长抑制活性评价。类黑粉菌素 K、1 和 L、2 对 A2780 人卵巢癌细胞系表现出细胞毒性,IC50 值分别为 4.18 和 7.26 μM。类黑粉菌素 N、4、D、9、E、10 和 G、12 对测试的病原菌具有活性,MIC 值范围为 16-64 μg/mL。类黑粉菌素 O、5、E、10 和 F、11 以及异麦角醇 B2、13 对水稻种子根伸长表现出中等抑制活性。